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通过 Src 同源结构域 2 区(SH2)谱分析破译人血小板中 ADP 诱导的、磷酸酪氨酸依赖性信号转导网络。

Deciphering of ADP-induced, phosphotyrosine-dependent signaling networks in human platelets by Src-homology 2 region (SH2)-profiling.

机构信息

Institute of Clinical Chemistry, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.

出版信息

Proteomics. 2013 Mar;13(6):1016-27. doi: 10.1002/pmic.201200353. Epub 2013 Feb 18.

Abstract

Tyrosine phosphorylation plays a central role in signal transduction controlling many important biological processes. In platelets, the activity of several signaling proteins is controlled by tyrosine phosphorylation ensuring proper platelet activation and aggregation essential for regulation of the delicate balance between bleeding and hemostasis. Here, we applied Src-homology 2 region (SH2)-profiling for deciphering of the phosphotyrosine state of human platelets activated by adenosine diphosphate (ADP). Applying a panel of 31 SH2-domains, rapid and complex regulation of the phosphotyrosine state of platelets was observed after ADP stimulation. Specific inhibition of platelet P2Y receptors by synthetic drugs revealed a major role for the P2Y1 receptor in tyrosine phosphorylation. Concomitant activation of protein kinase A (PKA) abolished ADP-induced tyrosine phosphorylation in a time and concentration-dependent manner. Given the fact that PKA activity is negatively regulated by the P2Y12 receptor, our data provide evidence for a novel link of synergistic control of the state of tyrosine phosphorylation by both P2Y receptors. By SH2 domain pull down and MS/MS analysis, we identified distinct tyrosine phosphorylation sites in cell adhesion molecules, intracellular adapter proteins and phosphatases suggesting a major, functional role of tyrosine phosphorylation of theses candidate proteins in ADP-dependent signaling in human platelets.

摘要

酪氨酸磷酸化在控制许多重要生物过程的信号转导中起着核心作用。在血小板中,几种信号蛋白的活性受酪氨酸磷酸化控制,以确保血小板的适当激活和聚集,这对于调节出血和止血之间的微妙平衡至关重要。在这里,我们应用Src 同源性 2 区(SH2)-谱分析来破译由二磷酸腺苷(ADP)激活的人血小板的磷酸酪氨酸状态。应用 31 个 SH2 结构域的面板,在 ADP 刺激后观察到血小板磷酸酪氨酸状态的快速和复杂调节。通过合成药物特异性抑制血小板 P2Y 受体,揭示了 P2Y1 受体在酪氨酸磷酸化中的主要作用。蛋白激酶 A(PKA)的同时激活以时间和浓度依赖的方式消除 ADP 诱导的酪氨酸磷酸化。鉴于 PKA 活性受 P2Y12 受体的负调控,我们的数据为 P2Y 受体协同控制磷酸酪氨酸状态的新联系提供了证据。通过 SH2 结构域下拉和 MS/MS 分析,我们在细胞黏附分子、细胞内衔接蛋白和磷酸酶中鉴定出不同的酪氨酸磷酸化位点,这表明这些候选蛋白在 ADP 依赖性人血小板信号转导中的酪氨酸磷酸化具有主要的功能作用。

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